English

2d Sigma Models on Non-compact Calabi-Yau and ${\mathcal N}=2$ Liouville Theory

High Energy Physics - Theory 2025-05-14 v3 Mathematical Physics math.MP

Abstract

We consider a class of two dimensional conformal N=2{\mathcal N}=2 supersymmetric U(1)U(1) gauge linear sigma models with NN fields of charges +1+1 and NN fields of charges 1-1, whose Higgs branches are non-compact toric Calabi-Yau manifolds of complex dimension 2N12N-1. We show, starting from large-NN approximation, that the Coulomb branch of these models, which opens up at strong coupling, is described by N=2{\mathcal N}=2 Liouville theory and then extrapolate it to exact equivalence demanding the central charge of the Liouville theory to be c^=2N1\hat{c}=2N-1. Next we concentrate on mostly physically attractive N=2N=2 and N3N \geq 3 cases and find there a perfect agreement of the set of complex moduli on the Calabi-Yau side with the marginal deformations in N=2{\mathcal N}=2 Liouville theory, supporting proposed exact equivalence.

Keywords

Cite

@article{arxiv.2307.02929,
  title  = {2d Sigma Models on Non-compact Calabi-Yau and ${\mathcal N}=2$ Liouville Theory},
  author = {Pavlo Gavrylenko and Evgenii Ievlev and Andrei Marshakov and Ilia Monastyrskii and Alexei Yung},
  journal= {arXiv preprint arXiv:2307.02929},
  year   = {2025}
}

Comments

31 pages, 3 figures; added citations and further clarifications about the studied correspondence